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The microarray technology described here has been used since October 2008 in PGS clinical practice by IVF clinics for a variety of clinical indications using both cleavage-stage and blastocyst biopsies.
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We used microarray technology as described (3, 5, 6 ) to analyze samples for the presence of IgG reactive with MERS-CoV S1 antigen (Table).
In order to comprehensively assess the effect of the cell wall damage caused by CCW12 depletion, we examined the ccw12Δ transcriptome using DNA microarray technology, as described in Methods.
The use of microarray technology for describing changes in mRNA expression to address ecological and evolutionary questions is becoming increasingly popular.
The serum samples were tested for the presence of IgG antibodies reactive with S1 antigens against MERS-CoV (residues 1 747), severe acute respiratory syndrome CoV (residues 1 676), and human CoV OC43 (residues 1 760) by using extensively validated protein-microarray technology, as described (2, 3, 6, 11 ).
RNA isolation, amplification and microarray technology have been described in detail in previous studies [ 14, 15].
Cell-based microarray technology was first described by Ziauddin and Sabatini in 2001 [ 2] for use in performing high throughput over-expression studies.
Gene expression values were determined using the microarray technology from Affymetrix as described above.
Overall, TS articles were more time-consuming to curate primarily due to the presence of many papers describing microarray technology to assay the effects of chemical exposure on gene expression.
On the basis of using the rat adjuvant-induced arthritis model of human RA and microarray technology in this study, we describe the gene expression profiles of arthritic LEW rats at different phases of the disease as well as the modulation of gene expression by a tolerogenic disease-protective regimen employing the disease-related antigen Bhsp65.
Here we describe the application of DNA microarray technology to the measurement of the steady-state mRNA level of thousands of genes simultaneously.
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